首页> 外文会议>2007 Asian symposium on computational heat transfer and fluid flow >AN INVERSE ANALYSIS FOR THE ESTIMATION OF BOUNDARY HEAT FLUX IN A CIRCULAR PIPE EMPLOYING THE PROPER ORTHOGONAL DECOMPOSITION
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AN INVERSE ANALYSIS FOR THE ESTIMATION OF BOUNDARY HEAT FLUX IN A CIRCULAR PIPE EMPLOYING THE PROPER ORTHOGONAL DECOMPOSITION

机译:进行正确正交分解的圆管边界热通量估计的逆分析

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An inverse algorithm based on the proper orthogonal decomposition technique is developed in this paper. The performance of the present inverse algorithm is examined by an inverse forced convection problem of identifying the unknown space-dependent heat flux at the outer boundary of a circular pipe. The inverse problem is resolved in a function optimization way by the Fletcher-Reeves conjugate gradient method. The effects of the convection, the location of the thermocouples and the measurement error on the performance of the inverse algorithm are studied thoroughly. It is shown that the present POD based inverse algorithm is very accurate as well as efficient. A significant time saving is also found by using the present inverse algorithm.
机译:本文提出了一种基于适当正交分解技术的逆算法。通过识别圆形管道外边界处未知的与空间有关的热通量的反强制对流问题,可以检验本逆算法的性能。通过Fletcher-Reeves共轭梯度法以函数优化的方式解决反问题。深入研究了对流,热电偶的位置和测量误差对逆算法性能的影响。结果表明,当前基于POD的逆算法非常准确且有效。通过使用本发明的逆算法也发现了显着的时间节省。

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